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Pump nomenclature

The convenience of the offered monitoring system consists in an opportunity fast adjustment in conditions of many nomenclature manufacture, reception of the protocol of the testing results, opportunity of use of the unskilled personnel. By an offered principle installations for the testing of welding by explosion of cases of plunger pumps, details of air engineering and other were developed. [Pg.885]

Nomenclature, 17 384-413 basic scheme of, 17 384-385 biochemical, 17 401-402 computerized approaches to, 17 400-401 elastomer, 21 761t enzyme, 10 258-260 for ionic liquids, 26 840-841 glossaries related to, 17 404 inorganic, 17 387-394 macromolecular (polymers), 17 403 404 organic, 17 394-401 polymer, 20 390-395 pump, 21 88 quinone, 21 236-237 reactor technology, 21 358 related to mass transfer, 15 731-737 reverse osmosis, 21 674-676 Society of Rheology, 21 704 spray-related, 23 199t systematic, 17 394... [Pg.629]

The nomenclature selected for the Dimensional Data Group (Grotq> C) was adcqjted fiom the Hydraulic Institute Standards for Centrifugal, Rotary, and Reciprocating Pumps. For example, the field number COOl, "Width of base srqrport", has the field name definition of "HIS A . This corresponds to dimension "A" in the Hydraulic Institute Standards. [Pg.179]

A centrifugal pump is defined in the glossary at the end of this chapter as a machine in which a rotor in a casing acts on a liquid to give it a high velocity head that is in turn converted to pressure head by the time the liquid leaves the pump. Other common nomenclature relating to the construction and performance of centrifugal and related kinds of pumps also is in that table. [Pg.134]

AU nomenclature and definitions of pump components shaU be in accordance with HI 1.1-1.2. [Pg.10]

FLOW NUMBER. A turbine or propeller agitator is, in essence, a pump impeller operating without a casing and with undirected inlet and output flows. The governing relations for turbines are similar to those for centrifugal pumps discussed in Chap. 8. Consider the flat-bladed turbine impeller shown in Fig. 9.8. The nomenclature is the same as in Fig. 8.11 2 is Ihe velocity of the blade tips V 2 and F 2 are the actual tangential and radial velocities of the liquid leaving the blade tips, respectively and V 2 is the total liquid velocity at the same point. [Pg.243]

Georg Eimbke (Hamburg, 17 December 1771-Eppendorf, nr. Hamburg, 20 April 1843), assistant in the University of Kiel, inspector of salines in Holstein (1797—1806), and apothecary in Hamburg, also published on adipocire (see p. 547), a filtering apparatus, a multiple-wick spirit lamp and a compressing pump. He published a comparative nomenclature. ... [Pg.750]

KEY SYMBOLS This Chemical Resistance Guide was compiled from available charts and tables provided by material manufacturers. Their nomenclature was condensed into key symbols. Their descriptive words shown below can aid in making judgements as to pump suitability lor specific applications. [Pg.854]

My contribution to the nomenclature is this pump laser lines are of infrared wavelength. Pumped emission is submillimetre or millimetre (abbreviated to submm and mm), whichever is applicable, if the wavelength is known. If the wavelength is not known, or is unimportant, or if a whole group of submm and mm lines is being referred to, or in other circumstances where a general term is needed, I use the expression (sub)millimetre (abbreviated to (sub)mm). This is fairly compatible with older usage, it should keep the purists happy, and I have found it to be not too intrusive. [Pg.5]

Six arrangement layouts (1-1-1, 2-1-1, 2-2-2, 3-3-2, 3-3-3,4-4-4) were generated. The layouts vary by the number of main components referenced by x-y-z nomenclature. The designation of 1-1-1 or B-R-G is 6 is the number of Brayton units, R is the number of recuperators each sized to support the operation of one Brayton unit at its rated power and G is the number of gas coolers each sized to support the operation of one Brayton unit at its rated power. It does not indicate the number of individual recuperators or gas coolers. For example a 2-2-2 for a 200 kWe system with both Braytons running (no spares) would be two 100 kWe Brayton units with two recuperators and gas coolers, each sized to support a 100 kWe Brayton unit. Additional reactor module components that were modeled include reactor and associated components, piping, valves, heat rejection system components, such as pumps and accumulators, shielding, and the primary support structure. [Pg.125]


See other pages where Pump nomenclature is mentioned: [Pg.27]    [Pg.27]    [Pg.175]    [Pg.133]    [Pg.123]    [Pg.110]    [Pg.908]    [Pg.133]    [Pg.240]    [Pg.220]    [Pg.188]    [Pg.375]    [Pg.479]    [Pg.275]    [Pg.11]    [Pg.167]    [Pg.38]   
See also in sourсe #XX -- [ Pg.5 ]




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